TRAIL-based tumor sensitizing galactoxyloglucan, a novel entity for targeting apoptotic machinery
S R Aravind1, Manu M Joseph1, Suraj K George2
1Laboratory of Biopharmaceuticals and Nanomedicine, Division of Cancer Research, Regional Cancer Centre, Trivandrum, Kerala 695011, India.
Abstract:
Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is an attractive target for cancer therapy due to its ability to selectively induce apoptosis in cancer cells, without causing significant toxicity in normal tissues. We previously reported that galactoxyloglucan (PST001) possesses significant antitumor and immunomodulatory properties. However, the exact mechanism in mediating this anticancer effect is unknown. This study, for the first time, indicated that PST001 sensitizes non-small cell lung cancer (A549) and nasopharyngeal (KB) cells to TRAIL-mediated apoptosis. In vitro studies suggested that PST001 induced apoptosis primarily via death receptors and predominantly activated caspases belonging to the extrinsic apoptotic cascade. Microarray profiling of PST001 treated A549 and KB cells showed the suppression of survivin (BIRC5) and anti-apoptotic Bcl-2, as well as increased cytochrome C. TaqMan low density array analysis of A549 cells also confirmed that the induction of apoptosis by the polysaccharide occurred through the TRAIL-DR4/DR5 pathways. This was finally confirmed by in silico analysis, which revealed that PST001 binds to TRAIL-DR4/DR5 complexes more strongly than TNF and Fas ligand-receptor complexes. In summary, our results suggest the potential of PST001 to be developed as an anticancer agent that not only preserves innate biological activity of TRAIL, but also sensitizes cancer cells to TRAIL-mediated apoptosis.
Insights
Galactoxyloglucan (PST001) enhances cancer cells
Area of Science:
- Oncology
- Immunology
- Biochemistry
Background:
- Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) targets cancer cells selectively.
- Galactoxyloglucan (PST001) exhibits antitumor and immunomodulatory effects.
- The mechanism of PST001's anticancer activity remains unclear.
Purpose of the Study:
- To investigate PST001's role in sensitizing cancer cells to TRAIL-mediated apoptosis.
- To elucidate the molecular pathways involved in PST001-induced apoptosis.
Main Methods:
- In vitro studies on A549 and KB cancer cell lines.
- Microarray and TaqMan low-density array analyses.
- In silico molecular docking simulations.
Main Results:
- PST001 sensitizes non-small cell lung cancer and nasopharyngeal cells to TRAIL-induced apoptosis.
- Apoptosis is mediated via death receptors and the extrinsic caspase cascade.
- PST001 downregulates survivin and Bcl-2, upregulates cytochrome C, and targets TRAIL-DR4/DR5 pathways.
- In silico analysis confirms strong binding of PST001 to TRAIL-DR4/DR5 complexes.
Conclusions:
- PST001 sensitizes cancer cells to TRAIL-mediated apoptosis.
- PST001 acts through the TRAIL-DR4/DR5 pathway, modulating key apoptosis-related proteins.
- PST001 shows potential as an adjuvant cancer therapeutic agent.
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